Characterisation of Geomechanical Properties of Bentonite Clay Used for Plug and Abandonment Operations of Coal Seam Gas Wells
- 1 School of Chemical Engineering, University of Queensland, Brisbane, Australia
- 2 School of Civil Engineering, University of Queensland, Brisbane, Australia
Abstract
Compressed bentonite in the form of pellets or plugs is used for the abandonment of production wells for the oil and gas industry. The design of the abandonment systems is based on the hydro-mechanical behaviour of the compressed bentonite defined by mechanical parameters that are used from published data rather than quantified for the used material by laboratory investigations. This paper presents an experimental study on characterising the swelling and shear strength behaviour of raw and polymer (polyvinylpyrrolidone, PVP) treated bentonite. Dislodgement tests consist of three hydrated bentonite plugs inserted in steel casings with the failure mechanism characterised. The bentonite used comes from a local mine (in Queensland, Australia) and is comparable to other bentonites usually used for the abandonment of wells or for other problems where mineral sealing is required (e.g. basal clay barriers of landfills). The experiments have shown that polymer treated bentonite shows significantly larger shear strengths than raw bentonite with simultaneously less swelling. More compressed samples also showed higher shear strengths and less swelling. The dislodgement tests have characterised for the first time the cascaded failure mechanism of a series of plugs forming an abandonment system. This investigation is the first step towards the development of an improved design for abandonment systems for wells using bentonite plugs.
- Ogden, F.L. and Ruff, J.F. (1991) Setting Time Effects on Bentonite Water-Well Annulus Seals. Journal of Irrigation and Drainage Engineering, 117, 534-545. https://doi.org/10.1061/(ASCE)0733-9437(1991)117:4(534)
- Ogden, F.L. and Ruff, J.F. (1993) Strength of Bentonite Water-Well Annulus Seals in Confined Aquifers. Journal of Irrigation and Drainage Engineering, 119, 242-250. https://doi.org/10.1061/(ASCE)0733-9437(1993)119:2(242)
- Towler, B.F. and Ehlers, G.C. (1997) Friction Factors for Hydrated Bentonite Plugs. SPE Rocky Mountain Regional Meeting, Casper, 18-21 May 1997, SPE 38347. https://doi.org/10.2118/38347-MS
- Towler, B.F., Victorov, H., Zamfir, G. and Ignat, P. (2008) Plugging Wells with Hydrated Bentonite, Part 2: Bentonite Bars. SPE Annual Technical Conference and Exhibition, Denver, 21-24 September 2008, SPE-115524.
- Towler, B.F., Firouzi, M., Holl, H.-G., Gandhi, R. and Thomas, A. (2016) Field Trials of Plugging Oil and Gas Wells with Hydrated Bentonite. Proceeding of SPE Asia Pacific Oil & Gas Conference and Exhibition, Perth, 25-27 October 2016, SPE-182199-MS.
- James, M.C. (1996) Using Coarse Ground Bentonite to Plug and Abandoned Holes. Water Well Journal, 50, 44-47.
- Clark, J. and Salsbury, B. (2003) Well Abandonment Using Highly Compressed Sodium Bentonite—An Australian Case Study. SPE/EPA/DOE Exploration and Production Environmental Conference, San Antonio, 10-12 March 2003, SPE-80592-MS.
- Towler, B.F., Firouzi, M., Mortezapour, A. and Hywel-Evans, P.D. (2015) Plugging CSG Wells with Bentonite: Review and preliminary Lab Results. SPE Asia Pacific Unconventional Resources Conference and Exhibition, Brisbane, 9-11 November 2015, SPE-176987. https://doi.org/10.2118/176987-MS
- Lloret Morancho, A., Villar, M.V., Sanchez, M., Gens Solé, A., Pintado Llurba, X. and Alonso Pérez de Agreda, E. (2003) Mechanical Behaviour of Heavily Compacted Bentonite under High Suction Changes. Géotechnique, 53, 27-40.
- Romero, E., Villar, M.V. and Lloret, A. (2005) Thermo-Hydro-Mechanical Behaviour of Two Heavily Overconsolidated Clays. Engineering Geology, 81, 255-268. https://doi.org/10.1016/j.enggeo.2005.06.011
- Dueck, A., Börgesson, L. and Johannesson, L.E. (2010) Stress-Strain Relation of Bentonite at Undrained Shear. Laboratory Tests to Investigate the Influence of Material Composition and Test Technique. Swedish Nuclear Fuel and Waste Management Company Technical Report TR-10-32, Svensk Kärnbränslehantering AB.